Kim Mun-Kyoung, Lee Jun Hyuck, Kim Hun, Park Soo Jeong, Kim Sung Hyun, Kang Gil Bu, Lee Yun Sok, Kim Jae Bum, Kim Kyeong Kyu, Suh Se Won, Eom Soo Hyun
Department of Life Science, Gwangju Institute of Science & Technology, Gwangju 500-712, Korea.
J Mol Biol. 2006 Sep 8;362(1):66-77. doi: 10.1016/j.jmb.2006.06.082. Epub 2006 Aug 9.
Visfatin/pre-B cell colony-enhancing factor 1 (PBEF)/nicotinamide phosphoribosyltransferase (NAmPRTase) is a multifunctional protein having phosphoribosyltransferase, cytokine and adipokine activities. Originally isolated as a cytokine promoting the differentiation of B cell precursors, it was recently suggested to act as an insulin analog via the insulin receptor. Here, we describe the first crystal structure of visfatin in three different forms: apo and in complex with either nicotinamide mononucleotide (NMN) or the NAmPRTase inhibitor FK-866 which was developed as an anti-cancer agent, interferes with NAD biosynthesis, showing a particularly high specificity for NAmPRTase. The crystal structures of the complexes with either NMN or FK-866 show that the enzymatic active site of visfatin is optimized for nicotinamide binding and that the nicotinamide-binding site is important for inhibition by FK-866. Interestingly, visfatin mimics insulin signaling by binding to the insulin receptor with an affinity similar to that of insulin and does not share the binding site with insulin on the insulin receptor. To predict binding sites, the potential interaction patches of visfatin and the L1-CR-L2 domain of insulin receptor were generated and analyzed. Although the relationship between the insulin-mimetic property and the enzymatic function of visfatin has not been clearly established, our structures raise the intriguing possibility that the glucose metabolism and the NAD biosynthesis are linked by visfatin.
内脂素/前B细胞集落增强因子1(PBEF)/烟酰胺磷酸核糖基转移酶(NAmPRTase)是一种具有磷酸核糖基转移酶、细胞因子和脂肪因子活性的多功能蛋白质。最初它作为一种促进B细胞前体分化的细胞因子被分离出来,最近有人提出它通过胰岛素受体发挥胰岛素类似物的作用。在此,我们描述了内脂素三种不同形式的首个晶体结构:无配体形式以及与烟酰胺单核苷酸(NMN)或NAmPRTase抑制剂FK - 866形成的复合物形式。FK - 866作为一种抗癌药物被开发出来,它干扰NAD生物合成,对NAmPRTase表现出特别高的特异性。与NMN或FK - 866形成的复合物的晶体结构表明,内脂素的酶活性位点针对烟酰胺结合进行了优化,并且烟酰胺结合位点对于FK - 866的抑制作用很重要。有趣的是,内脂素通过以与胰岛素相似的亲和力结合胰岛素受体来模拟胰岛素信号传导,并且在胰岛素受体上不与胰岛素共享结合位点。为了预测结合位点,我们生成并分析了内脂素与胰岛素受体的L1 - CR - L2结构域的潜在相互作用区域。尽管内脂素的胰岛素模拟特性与其酶功能之间的关系尚未明确确立,但我们的结构提出了一个有趣的可能性,即葡萄糖代谢和NAD生物合成通过内脂素相互联系。